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Fast DNA sequencing via transverse electronic transport.


ABSTRACT: A rapid and low-cost method to sequence DNA would usher in a revolution in medicine. We propose and theoretically show the feasibility of a protocol for sequencing based on the distributions of transverse electrical currents of single-stranded DNA while it translocates through a nanopore. Our estimates, based on the statistics of these distributions, reveal that sequencing of an entire human genome could be done with very high accuracy in a matter of hours without parallelization, that is, orders of magnitude faster than present techniques. The practical implementation of our approach would represent a substantial advancement in our ability to study, predict, and cure diseases from the perspective of the genetic makeup of each individual.

SUBMITTER: Lagerqvist J 

PROVIDER: S-EPMC2556950 | biostudies-literature | 2006 Apr

REPOSITORIES: biostudies-literature

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Fast DNA sequencing via transverse electronic transport.

Lagerqvist Johan J   Zwolak Michael M   Di Ventra Massimiliano M  

Nano letters 20060401 4


A rapid and low-cost method to sequence DNA would usher in a revolution in medicine. We propose and theoretically show the feasibility of a protocol for sequencing based on the distributions of transverse electrical currents of single-stranded DNA while it translocates through a nanopore. Our estimates, based on the statistics of these distributions, reveal that sequencing of an entire human genome could be done with very high accuracy in a matter of hours without parallelization, that is, order  ...[more]

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